Summary: Thrombospondin C-terminal region
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Thrombospondin C-terminal region Provide feedback
This region is found at the C-terminus of thrombospondin and related proteins.
Literature references
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Adolph KW; , Gene 2001;269:177-184.: A thrombospondin homologue in Drosophila melanogaster: cDNA and protein structure. PUBMED:11376949 EPMC:11376949
External database links
| PANDIT: | PF05735 |
| Pseudofam: | PF05735 |
| SCOP: | 1ux6 |
| SYSTERS: | TSP_C |
This tab holds annotation information from the InterPro database.
InterPro entry IPR008859
Thrombospondins are multimeric multidomain glycoproteins that function at cell surfaces and in the extracellular matrix milieu. They act as regulators of cell interactions in vertebrates. They are divided into two subfamilies, A and B, according to their overall molecular organisation. The subgroup A proteins TSP-1 and -2 contain an N-terminal domain, a VWFC domain, three TSP1 repeats, three EGF-like domains, TSP3 repeats and a C-terminal domain. They are assembled as trimer. The subgroup B thrombospondins, designated TSP-3, -4, and COMP (cartilage oligomeric matrix protein, also designated TSP-5) are distinct in that they contain unique N-terminal regions, lack the VWFC domain and TSP1 repeats, contain four copies of EGF-like domains, and are assembled as pentamers [PUBMED:11687483]. EGF, TSP3 repeats and the C-terminal domain are thus the hallmark of a thrombospondin.
The globular C-terminal domain is a beta sandwich of two curved antiparallel beta-sheets [PUBMED:15014436]. The fold is an elaboration of the jelly role topology, with strand B3-B7, B11 and B14-B15 forming the eight-stranded jelly roll motif. The function of the C-terminal domain is not yet known.
Gene Ontology
The mapping between Pfam and Gene Ontology is provided by InterPro. If you use this data please cite InterPro.
| Cellular component | extracellular region (GO:0005576) |
| Molecular function | calcium ion binding (GO:0005509) |
| Biological process | cell adhesion (GO:0007155) |
Domain organisation
Below is a listing of the unique domain organisations or architectures in which this domain is found. More...
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Alignments
We store a range of different sequence alignments for families. As well as the seed alignment from which the family is built, we provide the full alignment, generated by searching the sequence database using the family HMM. We also generate alignments using four representative proteomes (RP) sets, the NCBI sequence database, and our metagenomics sequence database. More...
View options
We make a range of alignments for each Pfam-A family. You can see a description of each above. You can view these alignments in various ways but please note that some types of alignment are never generated while others may not be available for all families, most commonly because the alignments are too large to handle.
| Seed (10) |
Full (444) |
Representative proteomes | NCBI (377) |
Meta (2) |
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| RP15 (43) |
RP35 (61) |
RP55 (129) |
RP75 (222) |
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| PP/heatmap | 1 | |||||||
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1Cannot generate PP/Heatmap alignments for seeds; no PP data available
Key:
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not generated,
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Format an alignment
Download options
We make all of our alignments available in Stockholm format. You can download them here as raw, plain text files or as gzip-compressed files.
| Seed (10) |
Full (444) |
Representative proteomes | NCBI (377) |
Meta (2) |
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|---|---|---|---|---|---|---|---|---|
| RP15 (43) |
RP35 (61) |
RP55 (129) |
RP75 (222) |
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| Raw Stockholm | ||||||||
| Gzipped | ||||||||
You can also download a FASTA format file containing the full-length sequences for all sequences in the full alignment.
External links
MyHits provides a collection of tools to handle multiple sequence alignments. For example, one can refine a seed alignment (sequence addition or removal, re-alignment or manual edition) and then search databases for remote homologs using HMMER3.
HMM logo
HMM logos is one way of visualising profile HMMs. Logos provide a quick overview of the properties of an HMM in a graphical form. You can see a more detailed description of HMM logos and find out how you can interpret them here. More...
Trees
This page displays the phylogenetic tree for this family's seed alignment. We use FastTree to calculate neighbour join trees with a local bootstrap based on 100 resamples (shown next to the tree nodes). FastTree calculates approximately-maximum-likelihood phylogenetic trees from our seed alignment.
Note: You can also download the data file for the tree.
Curation and family details
This section shows the detailed information about the Pfam family. You can see the definitions of many of the terms in this section in the glossary and a fuller explanation of the scoring system that we use in the scores section of the help pages.
Curation
| Seed source: | Pfam-B_1875 (release 8.0) |
| Previous IDs: | TSPC; |
| Type: | Family |
| Author: | Bateman A |
| Number in seed: | 10 |
| Number in full: | 444 |
| Average length of the domain: | 188.30 aa |
| Average identity of full alignment: | 65 % |
| Average coverage of the sequence by the domain: | 21.57 % |
HMM information
| HMM build commands: |
build method: hmmbuild -o /dev/null HMM SEED
search method: hmmsearch -Z 23193494 -E 1000 --cpu 4 HMM pfamseq
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| Model details: |
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| Model length: | 201 | ||||||||||||
| Family (HMM) version: | 7 | ||||||||||||
| Download: | download the raw HMM for this family |
Species distribution
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Structures
For those sequences which have a structure in the Protein DataBank, we use the mapping between UniProt, PDB and Pfam coordinate systems from the PDBe group, to allow us to map Pfam domains onto UniProt sequences and three-dimensional protein structures. The table below shows the structures on which the TSP_C domain has been found. There are 6 instances of this domain found in the PDB. Note that there may be multiple copies of the domain in a single PDB structure, since many structures contain multiple copies of the same protein seqence.
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Archea
Eukaryota
Bacteria
Other sequences
Viruses
Unclassified
Viroids
Unclassified sequence